Prof. Daphne Atlas - Data Analysis Innovation - Best Researcher Award
The Hebrew University of Jerusalem - Israel
Author Profile
Early Academic Pursuits
Daphne Atlas began her academic journey with a focus on biophysics, culminating in a Ph.D. at the Feinberg Graduate School of the Weizmann Institute of Science in April 2023. Her doctoral research, conducted under the supervision of Professor Arieh Berger, delved into the intricate task of mapping the active site of the proteolytic enzyme porcine elastase.
Professional Endeavors
Following her academic achievements, Professor Atlas assumed the position of Professor of Neurochemistry in the Department of Biological Chemistry at The Hebrew University of Jerusalem in 1990. Her expertise in neurochemistry marked a significant contribution to the field, indicating a shift from her early biophysical focus.
Contributions and Research Focus
During her tenure as a professor, Daphne Atlas made noteworthy contributions to the field of neurochemistry. Her research focused on unraveling the complexities of molecular and cellular processes underlying neurological phenomena. A pivotal moment in her career was marked by a foreign appointment as a visiting professor at the Department of Molecular & Cell Biology at the University of California, Berkeley, in 1994.
Accolades and Recognition
Professor Atlas garnered recognition for her groundbreaking work, earning accolades within the academic community. Her contributions were acknowledged not only for their scientific significance but also for the interdisciplinary nature of her research.
Impact and Influence
Daphne Atlas's work left a lasting impact on the understanding of neurochemistry, bridging the gap between biophysics and neuroscience. Her innovative approaches to studying molecular mechanisms opened new avenues for researchers in the field.
Legacy and Future Contributions
As a pioneer in neurochemistry, Professor Atlas has laid the groundwork for future researchers to build upon. Her legacy includes a rich tapestry of knowledge, with implications for both basic science and potential applications in clinical settings. Looking forward, her influence is likely to persist as a source of inspiration for those exploring the frontiers of neuroscientific research.
In summary, Daphne Atlas's academic journey, professional endeavors, and significant contributions have shaped the landscape of neurochemistry. Her work stands as a testament to the power of interdisciplinary research and its potential to transform our understanding of complex biological processes.
Notable Publications
- SuperDopa (SD), SuperDopa amide (SDA) and Thioredoxin-mimetic peptides protect ARPE-19 cells from photic- and non-photic stress Journal of Photochemistry and Photobiology 2024-02
- TXM peptides inhibit SARS-CoV-2 infection, syncytia formation, and lower inflammatory consequences Antiviral Research 2024-02
- N-acetylcysteine Amide AD4/NACA and Thioredoxin Mimetic Peptides Inhibit Platelet Aggregation and Protect against Oxidative Stress Antioxidants 2023-07-07
-